1 // SPDX-License-Identifier: GPL-2.0
2 #include <linux/fanotify.h>
3 #include <linux/fsnotify_backend.h>
4 #include <linux/init.h>
5 #include <linux/jiffies.h>
6 #include <linux/kernel.h> /* UINT_MAX */
7 #include <linux/mount.h>
8 #include <linux/sched.h>
9 #include <linux/sched/user.h>
10 #include <linux/sched/signal.h>
11 #include <linux/types.h>
12 #include <linux/wait.h>
13 #include <linux/audit.h>
14 #include <linux/sched/mm.h>
15 #include <linux/statfs.h>
16 #include <linux/stringhash.h>
17 #include <linux/pidfs.h>
18
19 #include "fanotify.h"
20
fanotify_path_equal(const struct path * p1,const struct path * p2)21 static bool fanotify_path_equal(const struct path *p1, const struct path *p2)
22 {
23 return p1->mnt == p2->mnt && p1->dentry == p2->dentry;
24 }
25
fanotify_hash_path(const struct path * path)26 static unsigned int fanotify_hash_path(const struct path *path)
27 {
28 return hash_ptr(path->dentry, FANOTIFY_EVENT_HASH_BITS) ^
29 hash_ptr(path->mnt, FANOTIFY_EVENT_HASH_BITS);
30 }
31
fanotify_hash_fsid(__kernel_fsid_t * fsid)32 static unsigned int fanotify_hash_fsid(__kernel_fsid_t *fsid)
33 {
34 return hash_32(fsid->val[0], FANOTIFY_EVENT_HASH_BITS) ^
35 hash_32(fsid->val[1], FANOTIFY_EVENT_HASH_BITS);
36 }
37
fanotify_fh_equal(struct fanotify_fh * fh1,struct fanotify_fh * fh2)38 static bool fanotify_fh_equal(struct fanotify_fh *fh1,
39 struct fanotify_fh *fh2)
40 {
41 if (fh1->type != fh2->type || fh1->len != fh2->len)
42 return false;
43
44 return !fh1->len ||
45 !memcmp(fanotify_fh_buf(fh1), fanotify_fh_buf(fh2), fh1->len);
46 }
47
fanotify_hash_fh(struct fanotify_fh * fh)48 static unsigned int fanotify_hash_fh(struct fanotify_fh *fh)
49 {
50 long salt = (long)fh->type | (long)fh->len << 8;
51
52 /*
53 * full_name_hash() works long by long, so it handles fh buf optimally.
54 */
55 return full_name_hash((void *)salt, fanotify_fh_buf(fh), fh->len);
56 }
57
fanotify_fid_event_equal(struct fanotify_fid_event * ffe1,struct fanotify_fid_event * ffe2)58 static bool fanotify_fid_event_equal(struct fanotify_fid_event *ffe1,
59 struct fanotify_fid_event *ffe2)
60 {
61 /* Do not merge fid events without object fh */
62 if (!ffe1->object_fh.len)
63 return false;
64
65 return fanotify_fsid_equal(&ffe1->fsid, &ffe2->fsid) &&
66 fanotify_fh_equal(&ffe1->object_fh, &ffe2->object_fh);
67 }
68
fanotify_info_equal(struct fanotify_info * info1,struct fanotify_info * info2)69 static bool fanotify_info_equal(struct fanotify_info *info1,
70 struct fanotify_info *info2)
71 {
72 if (info1->dir_fh_totlen != info2->dir_fh_totlen ||
73 info1->dir2_fh_totlen != info2->dir2_fh_totlen ||
74 info1->file_fh_totlen != info2->file_fh_totlen ||
75 info1->name_len != info2->name_len ||
76 info1->name2_len != info2->name2_len)
77 return false;
78
79 if (info1->dir_fh_totlen &&
80 !fanotify_fh_equal(fanotify_info_dir_fh(info1),
81 fanotify_info_dir_fh(info2)))
82 return false;
83
84 if (info1->dir2_fh_totlen &&
85 !fanotify_fh_equal(fanotify_info_dir2_fh(info1),
86 fanotify_info_dir2_fh(info2)))
87 return false;
88
89 if (info1->file_fh_totlen &&
90 !fanotify_fh_equal(fanotify_info_file_fh(info1),
91 fanotify_info_file_fh(info2)))
92 return false;
93
94 if (info1->name_len &&
95 memcmp(fanotify_info_name(info1), fanotify_info_name(info2),
96 info1->name_len))
97 return false;
98
99 return !info1->name2_len ||
100 !memcmp(fanotify_info_name2(info1), fanotify_info_name2(info2),
101 info1->name2_len);
102 }
103
fanotify_name_event_equal(struct fanotify_name_event * fne1,struct fanotify_name_event * fne2)104 static bool fanotify_name_event_equal(struct fanotify_name_event *fne1,
105 struct fanotify_name_event *fne2)
106 {
107 struct fanotify_info *info1 = &fne1->info;
108 struct fanotify_info *info2 = &fne2->info;
109
110 /* Do not merge name events without dir fh */
111 if (!info1->dir_fh_totlen)
112 return false;
113
114 if (!fanotify_fsid_equal(&fne1->fsid, &fne2->fsid))
115 return false;
116
117 return fanotify_info_equal(info1, info2);
118 }
119
fanotify_error_event_equal(struct fanotify_error_event * fee1,struct fanotify_error_event * fee2)120 static bool fanotify_error_event_equal(struct fanotify_error_event *fee1,
121 struct fanotify_error_event *fee2)
122 {
123 /* Error events against the same file system are always merged. */
124 return fanotify_fsid_equal(&fee1->fsid, &fee2->fsid);
125 }
126
fanotify_should_merge(struct fanotify_event * old,struct fanotify_event * new)127 static bool fanotify_should_merge(struct fanotify_event *old,
128 struct fanotify_event *new)
129 {
130 pr_debug("%s: old=%p new=%p\n", __func__, old, new);
131
132 if (old->hash != new->hash ||
133 old->type != new->type || old->pid != new->pid)
134 return false;
135
136 /*
137 * We want to merge many dirent events in the same dir (i.e.
138 * creates/unlinks/renames), but we do not want to merge dirent
139 * events referring to subdirs with dirent events referring to
140 * non subdirs, otherwise, user won't be able to tell from a
141 * mask FAN_CREATE|FAN_DELETE|FAN_ONDIR if it describes mkdir+
142 * unlink pair or rmdir+create pair of events.
143 */
144 if ((old->mask & FS_ISDIR) != (new->mask & FS_ISDIR))
145 return false;
146
147 /*
148 * FAN_RENAME event is reported with special info record types,
149 * so we cannot merge it with other events.
150 */
151 if ((old->mask & FAN_RENAME) != (new->mask & FAN_RENAME))
152 return false;
153
154 switch (old->type) {
155 case FANOTIFY_EVENT_TYPE_PATH:
156 return fanotify_path_equal(fanotify_event_path(old),
157 fanotify_event_path(new));
158 case FANOTIFY_EVENT_TYPE_FID:
159 return fanotify_fid_event_equal(FANOTIFY_FE(old),
160 FANOTIFY_FE(new));
161 case FANOTIFY_EVENT_TYPE_FID_NAME:
162 return fanotify_name_event_equal(FANOTIFY_NE(old),
163 FANOTIFY_NE(new));
164 case FANOTIFY_EVENT_TYPE_FS_ERROR:
165 return fanotify_error_event_equal(FANOTIFY_EE(old),
166 FANOTIFY_EE(new));
167 case FANOTIFY_EVENT_TYPE_MNT:
168 return false;
169 default:
170 WARN_ON_ONCE(1);
171 }
172
173 return false;
174 }
175
176 /* Limit event merges to limit CPU overhead per event */
177 #define FANOTIFY_MAX_MERGE_EVENTS 128
178
179 /* and the list better be locked by something too! */
fanotify_merge(struct fsnotify_group * group,struct fsnotify_event * event)180 static int fanotify_merge(struct fsnotify_group *group,
181 struct fsnotify_event *event)
182 {
183 struct fanotify_event *old, *new = FANOTIFY_E(event);
184 unsigned int bucket = fanotify_event_hash_bucket(group, new);
185 struct hlist_head *hlist = &group->fanotify_data.merge_hash[bucket];
186 int i = 0;
187
188 pr_debug("%s: group=%p event=%p bucket=%u\n", __func__,
189 group, event, bucket);
190
191 /*
192 * Don't merge a permission event with any other event so that we know
193 * the event structure we have created in fanotify_handle_event() is the
194 * one we should check for permission response.
195 */
196 if (fanotify_is_perm_event(new->mask))
197 return 0;
198
199 hlist_for_each_entry(old, hlist, merge_list) {
200 if (++i > FANOTIFY_MAX_MERGE_EVENTS)
201 break;
202 if (fanotify_should_merge(old, new)) {
203 old->mask |= new->mask;
204
205 if (fanotify_is_error_event(old->mask))
206 FANOTIFY_EE(old)->err_count++;
207
208 return 1;
209 }
210 }
211
212 return 0;
213 }
214
215 /*
216 * Wait for response to permission event. The function also takes care of
217 * freeing the permission event (or offloads that in case the wait is canceled
218 * by a signal). The function returns 0 in case access got allowed by userspace,
219 * -EPERM in case userspace disallowed the access, and -ERESTARTSYS in case
220 * the wait got interrupted by a signal.
221 */
fanotify_get_response(struct fsnotify_group * group,struct fanotify_perm_event * event,struct fsnotify_iter_info * iter_info)222 static int fanotify_get_response(struct fsnotify_group *group,
223 struct fanotify_perm_event *event,
224 struct fsnotify_iter_info *iter_info)
225 {
226 int ret, errno;
227
228 pr_debug("%s: group=%p event=%p\n", __func__, group, event);
229
230 ret = wait_event_state(group->fanotify_data.access_waitq,
231 event->state == FAN_EVENT_ANSWERED,
232 (TASK_KILLABLE|TASK_FREEZABLE));
233
234 /* Signal pending? */
235 if (ret < 0) {
236 spin_lock(&group->notification_lock);
237 /* Event reported to userspace and no answer yet? */
238 if (event->state == FAN_EVENT_REPORTED) {
239 /* Event will get freed once userspace answers to it */
240 event->state = FAN_EVENT_CANCELED;
241 spin_unlock(&group->notification_lock);
242 return ret;
243 }
244 /* Event not yet reported? Just remove it. */
245 if (event->state == FAN_EVENT_INIT) {
246 fsnotify_remove_queued_event(group, &event->fae.fse);
247 /* Permission events are not supposed to be hashed */
248 WARN_ON_ONCE(!hlist_unhashed(&event->fae.merge_list));
249 }
250 /*
251 * Event may be also answered in case signal delivery raced
252 * with wakeup. In that case we have nothing to do besides
253 * freeing the event and reporting error.
254 */
255 spin_unlock(&group->notification_lock);
256 goto out;
257 }
258
259 /* userspace responded, convert to something usable */
260 switch (event->response & FANOTIFY_RESPONSE_ACCESS) {
261 case FAN_ALLOW:
262 ret = 0;
263 break;
264 case FAN_DENY:
265 /* Check custom errno from pre-content events */
266 errno = fanotify_get_response_errno(event->response);
267 if (errno) {
268 ret = -errno;
269 break;
270 }
271 fallthrough;
272 default:
273 ret = -EPERM;
274 }
275
276 /* Check if the response should be audited */
277 if (event->response & FAN_AUDIT) {
278 u32 response = event->response &
279 (FANOTIFY_RESPONSE_ACCESS | FANOTIFY_RESPONSE_FLAGS);
280 audit_fanotify(response & ~FAN_AUDIT, &event->audit_rule);
281 }
282
283 pr_debug("%s: group=%p event=%p about to return ret=%d\n", __func__,
284 group, event, ret);
285 out:
286 fsnotify_destroy_event(group, &event->fae.fse);
287
288 return ret;
289 }
290
291 /*
292 * This function returns a mask for an event that only contains the flags
293 * that have been specifically requested by the user. Flags that may have
294 * been included within the event mask, but have not been explicitly
295 * requested by the user, will not be present in the returned mask.
296 */
fanotify_group_event_mask(struct fsnotify_group * group,struct fsnotify_iter_info * iter_info,u32 * match_mask,u32 event_mask,const void * data,int data_type,struct inode * dir)297 static u32 fanotify_group_event_mask(struct fsnotify_group *group,
298 struct fsnotify_iter_info *iter_info,
299 u32 *match_mask, u32 event_mask,
300 const void *data, int data_type,
301 struct inode *dir)
302 {
303 __u32 marks_mask = 0, marks_ignore_mask = 0;
304 __u32 test_mask, user_mask = FANOTIFY_OUTGOING_EVENTS |
305 FANOTIFY_EVENT_FLAGS;
306 const struct path *path = fsnotify_data_path(data, data_type);
307 unsigned int fid_mode = FAN_GROUP_FLAG(group, FANOTIFY_FID_BITS);
308 struct fsnotify_mark *mark;
309 bool ondir = event_mask & FAN_ONDIR;
310 int type;
311
312 pr_debug("%s: report_mask=%x mask=%x data=%p data_type=%d\n",
313 __func__, iter_info->report_mask, event_mask, data, data_type);
314
315 if (FAN_GROUP_FLAG(group, FAN_REPORT_MNT)) {
316 if (data_type != FSNOTIFY_EVENT_MNT)
317 return 0;
318 } else if (!fid_mode) {
319 /* Do we have path to open a file descriptor? */
320 if (!path)
321 return 0;
322 /* Path type events are only relevant for files and dirs */
323 if (!d_is_reg(path->dentry) && !d_can_lookup(path->dentry))
324 return 0;
325 } else if (!(fid_mode & FAN_REPORT_FID)) {
326 /* Do we have a directory inode to report? */
327 if (!dir && !ondir)
328 return 0;
329 }
330
331 fsnotify_foreach_iter_mark_type(iter_info, mark, type) {
332 /*
333 * Apply ignore mask depending on event flags in ignore mask.
334 */
335 marks_ignore_mask |=
336 fsnotify_effective_ignore_mask(mark, ondir, type);
337
338 /*
339 * Send the event depending on event flags in mark mask.
340 */
341 if (!fsnotify_mask_applicable(mark->mask, ondir, type))
342 continue;
343
344 marks_mask |= mark->mask;
345
346 /* Record the mark types of this group that matched the event */
347 *match_mask |= 1U << type;
348 }
349
350 test_mask = event_mask & marks_mask & ~marks_ignore_mask;
351
352 /*
353 * For dirent modification events (create/delete/move) that do not carry
354 * the child entry name information, we report FAN_ONDIR for mkdir/rmdir
355 * so user can differentiate them from creat/unlink.
356 *
357 * For backward compatibility and consistency, do not report FAN_ONDIR
358 * to user in legacy fanotify mode (reporting fd) and report FAN_ONDIR
359 * to user in fid mode for all event types.
360 *
361 * We never report FAN_EVENT_ON_CHILD to user, but we do pass it in to
362 * fanotify_alloc_event() when group is reporting fid as indication
363 * that event happened on child.
364 */
365 if (fid_mode) {
366 /* Do not report event flags without any event */
367 if (!(test_mask & ~FANOTIFY_EVENT_FLAGS))
368 return 0;
369 } else {
370 user_mask &= ~FANOTIFY_EVENT_FLAGS;
371 }
372
373 return test_mask & user_mask;
374 }
375
376 /*
377 * Check size needed to encode fanotify_fh.
378 *
379 * Return size of encoded fh without fanotify_fh header.
380 * Return 0 on failure to encode.
381 */
fanotify_encode_fh_len(struct inode * inode)382 static int fanotify_encode_fh_len(struct inode *inode)
383 {
384 int dwords = 0;
385 int fh_len;
386
387 if (!inode)
388 return 0;
389
390 exportfs_encode_fid(inode, NULL, &dwords);
391 fh_len = dwords << 2;
392
393 /*
394 * struct fanotify_error_event might be preallocated and is
395 * limited to MAX_HANDLE_SZ. This should never happen, but
396 * safeguard by forcing an invalid file handle.
397 */
398 if (WARN_ON_ONCE(fh_len > MAX_HANDLE_SZ))
399 return 0;
400
401 return fh_len;
402 }
403
404 /*
405 * Encode fanotify_fh.
406 *
407 * Return total size of encoded fh including fanotify_fh header.
408 * Return 0 on failure to encode.
409 */
fanotify_encode_fh(struct fanotify_fh * fh,struct inode * inode,unsigned int fh_len,unsigned int * hash,gfp_t gfp)410 static int fanotify_encode_fh(struct fanotify_fh *fh, struct inode *inode,
411 unsigned int fh_len, unsigned int *hash,
412 gfp_t gfp)
413 {
414 int dwords, type = 0;
415 char *ext_buf = NULL;
416 void *buf = fh + 1;
417 int err;
418
419 fh->type = FILEID_ROOT;
420 fh->len = 0;
421 fh->flags = 0;
422
423 /*
424 * Invalid FHs are used by FAN_FS_ERROR for errors not
425 * linked to any inode. The f_handle won't be reported
426 * back to userspace.
427 */
428 if (!inode)
429 goto out;
430
431 /*
432 * !gpf means preallocated variable size fh, but fh_len could
433 * be zero in that case if encoding fh len failed.
434 */
435 err = -ENOENT;
436 if (fh_len < 4 || WARN_ON_ONCE(fh_len % 4) || fh_len > MAX_HANDLE_SZ)
437 goto out_err;
438
439 /* No external buffer in a variable size allocated fh */
440 if (gfp && fh_len > FANOTIFY_INLINE_FH_LEN) {
441 /* Treat failure to allocate fh as failure to encode fh */
442 err = -ENOMEM;
443 ext_buf = kmalloc(fh_len, gfp);
444 if (!ext_buf)
445 goto out_err;
446
447 *fanotify_fh_ext_buf_ptr(fh) = ext_buf;
448 buf = ext_buf;
449 fh->flags |= FANOTIFY_FH_FLAG_EXT_BUF;
450 }
451
452 dwords = fh_len >> 2;
453 type = exportfs_encode_fid(inode, buf, &dwords);
454 err = -EINVAL;
455 /*
456 * Unlike file_handle, type and len of struct fanotify_fh are u8.
457 * Traditionally, filesystem return handle_type < 0xff, but there
458 * is no enforcement for that in vfs.
459 */
460 BUILD_BUG_ON(MAX_HANDLE_SZ > 0xff || FILEID_INVALID > 0xff);
461 if (type <= 0 || type >= FILEID_INVALID || fh_len != dwords << 2)
462 goto out_err;
463
464 fh->type = type;
465 fh->len = fh_len;
466
467 out:
468 /*
469 * Mix fh into event merge key. Hash might be NULL in case of
470 * unhashed FID events (i.e. FAN_FS_ERROR).
471 */
472 if (hash)
473 *hash ^= fanotify_hash_fh(fh);
474
475 return FANOTIFY_FH_HDR_LEN + fh_len;
476
477 out_err:
478 pr_warn_ratelimited("fanotify: failed to encode fid (type=%d, len=%d, err=%i)\n",
479 type, fh_len, err);
480 kfree(ext_buf);
481 *fanotify_fh_ext_buf_ptr(fh) = NULL;
482 /* Report the event without a file identifier on encode error */
483 fh->type = FILEID_INVALID;
484 fh->len = 0;
485 return 0;
486 }
487
488 /*
489 * FAN_REPORT_FID is ambiguous in that it reports the fid of the child for
490 * some events and the fid of the parent for create/delete/move events.
491 *
492 * With the FAN_REPORT_TARGET_FID flag, the fid of the child is reported
493 * also in create/delete/move events in addition to the fid of the parent
494 * and the name of the child.
495 */
fanotify_report_child_fid(unsigned int fid_mode,u32 mask)496 static inline bool fanotify_report_child_fid(unsigned int fid_mode, u32 mask)
497 {
498 if (mask & ALL_FSNOTIFY_DIRENT_EVENTS)
499 return (fid_mode & FAN_REPORT_TARGET_FID);
500
501 return (fid_mode & FAN_REPORT_FID) && !(mask & FAN_ONDIR);
502 }
503
504 /*
505 * The inode to use as identifier when reporting fid depends on the event
506 * and the group flags.
507 *
508 * With the group flag FAN_REPORT_TARGET_FID, always report the child fid.
509 *
510 * Without the group flag FAN_REPORT_TARGET_FID, report the modified directory
511 * fid on dirent events and the child fid otherwise.
512 *
513 * For example:
514 * FS_ATTRIB reports the child fid even if reported on a watched parent.
515 * FS_CREATE reports the modified dir fid without FAN_REPORT_TARGET_FID.
516 * and reports the created child fid with FAN_REPORT_TARGET_FID.
517 */
fanotify_fid_inode(u32 event_mask,const void * data,int data_type,struct inode * dir,unsigned int fid_mode)518 static struct inode *fanotify_fid_inode(u32 event_mask, const void *data,
519 int data_type, struct inode *dir,
520 unsigned int fid_mode)
521 {
522 if ((event_mask & ALL_FSNOTIFY_DIRENT_EVENTS) &&
523 !(fid_mode & FAN_REPORT_TARGET_FID))
524 return dir;
525
526 return fsnotify_data_inode(data, data_type);
527 }
528
529 /*
530 * The inode to use as identifier when reporting dir fid depends on the event.
531 * Report the modified directory inode on dirent modification events.
532 * Report the "victim" inode if "victim" is a directory.
533 * Report the parent inode if "victim" is not a directory and event is
534 * reported to parent.
535 * Otherwise, do not report dir fid.
536 */
fanotify_dfid_inode(u32 event_mask,const void * data,int data_type,struct inode * dir)537 static struct inode *fanotify_dfid_inode(u32 event_mask, const void *data,
538 int data_type, struct inode *dir)
539 {
540 struct inode *inode = fsnotify_data_inode(data, data_type);
541
542 if (event_mask & ALL_FSNOTIFY_DIRENT_EVENTS)
543 return dir;
544
545 if (inode && S_ISDIR(inode->i_mode))
546 return inode;
547
548 return dir;
549 }
550
fanotify_alloc_path_event(const struct path * path,unsigned int * hash,gfp_t gfp)551 static struct fanotify_event *fanotify_alloc_path_event(const struct path *path,
552 unsigned int *hash,
553 gfp_t gfp)
554 {
555 struct fanotify_path_event *pevent;
556
557 pevent = kmem_cache_alloc(fanotify_path_event_cachep, gfp);
558 if (!pevent)
559 return NULL;
560
561 pevent->fae.type = FANOTIFY_EVENT_TYPE_PATH;
562 pevent->path = *path;
563 *hash ^= fanotify_hash_path(path);
564 path_get(path);
565
566 return &pevent->fae;
567 }
568
fanotify_alloc_mnt_event(u64 mnt_id,gfp_t gfp)569 static struct fanotify_event *fanotify_alloc_mnt_event(u64 mnt_id, gfp_t gfp)
570 {
571 struct fanotify_mnt_event *pevent;
572
573 pevent = kmem_cache_alloc(fanotify_mnt_event_cachep, gfp);
574 if (!pevent)
575 return NULL;
576
577 pevent->fae.type = FANOTIFY_EVENT_TYPE_MNT;
578 pevent->mnt_id = mnt_id;
579
580 return &pevent->fae;
581 }
582
fanotify_alloc_perm_event(const void * data,int data_type,gfp_t gfp)583 static struct fanotify_event *fanotify_alloc_perm_event(const void *data,
584 int data_type,
585 gfp_t gfp)
586 {
587 const struct path *path = fsnotify_data_path(data, data_type);
588 const struct file_range *range =
589 fsnotify_data_file_range(data, data_type);
590 struct fanotify_perm_event *pevent;
591
592 pevent = kmem_cache_alloc(fanotify_perm_event_cachep, gfp);
593 if (!pevent)
594 return NULL;
595
596 pevent->fae.type = FANOTIFY_EVENT_TYPE_PATH_PERM;
597 pevent->response = 0;
598 pevent->hdr.type = FAN_RESPONSE_INFO_NONE;
599 pevent->hdr.pad = 0;
600 pevent->hdr.len = 0;
601 pevent->state = FAN_EVENT_INIT;
602 pevent->watchdog_cnt = 0;
603 pevent->path = *path;
604 pevent->pos = range ? range->pos : FANOTIFY_NO_RANGE;
605 pevent->count = range ? range->count : 0;
606 path_get(path);
607
608 return &pevent->fae;
609 }
610
fanotify_alloc_fid_event(struct inode * id,__kernel_fsid_t * fsid,unsigned int * hash,gfp_t gfp)611 static struct fanotify_event *fanotify_alloc_fid_event(struct inode *id,
612 __kernel_fsid_t *fsid,
613 unsigned int *hash,
614 gfp_t gfp)
615 {
616 struct fanotify_fid_event *ffe;
617
618 ffe = kmem_cache_alloc(fanotify_fid_event_cachep, gfp);
619 if (!ffe)
620 return NULL;
621
622 ffe->fae.type = FANOTIFY_EVENT_TYPE_FID;
623 ffe->fsid = *fsid;
624 *hash ^= fanotify_hash_fsid(fsid);
625 fanotify_encode_fh(&ffe->object_fh, id, fanotify_encode_fh_len(id),
626 hash, gfp);
627
628 return &ffe->fae;
629 }
630
fanotify_alloc_name_event(struct inode * dir,__kernel_fsid_t * fsid,const struct qstr * name,struct inode * child,struct dentry * moved,unsigned int * hash,gfp_t gfp)631 static struct fanotify_event *fanotify_alloc_name_event(struct inode *dir,
632 __kernel_fsid_t *fsid,
633 const struct qstr *name,
634 struct inode *child,
635 struct dentry *moved,
636 unsigned int *hash,
637 gfp_t gfp)
638 {
639 struct fanotify_name_event *fne;
640 struct fanotify_info *info;
641 struct fanotify_fh *dfh, *ffh;
642 struct inode *dir2 = moved ? d_inode(moved->d_parent) : NULL;
643 const struct qstr *name2 = moved ? &moved->d_name : NULL;
644 unsigned int dir_fh_len = fanotify_encode_fh_len(dir);
645 unsigned int dir2_fh_len = fanotify_encode_fh_len(dir2);
646 unsigned int child_fh_len = fanotify_encode_fh_len(child);
647 unsigned long name_len = name ? name->len : 0;
648 unsigned long name2_len = name2 ? name2->len : 0;
649 unsigned int len, size;
650
651 /* Reserve terminating null byte even for empty name */
652 size = sizeof(*fne) + name_len + name2_len + 2;
653 if (dir_fh_len)
654 size += FANOTIFY_FH_HDR_LEN + dir_fh_len;
655 if (dir2_fh_len)
656 size += FANOTIFY_FH_HDR_LEN + dir2_fh_len;
657 if (child_fh_len)
658 size += FANOTIFY_FH_HDR_LEN + child_fh_len;
659 fne = kmalloc(size, gfp);
660 if (!fne)
661 return NULL;
662
663 fne->fae.type = FANOTIFY_EVENT_TYPE_FID_NAME;
664 fne->fsid = *fsid;
665 *hash ^= fanotify_hash_fsid(fsid);
666 info = &fne->info;
667 fanotify_info_init(info);
668 if (dir_fh_len) {
669 dfh = fanotify_info_dir_fh(info);
670 len = fanotify_encode_fh(dfh, dir, dir_fh_len, hash, 0);
671 fanotify_info_set_dir_fh(info, len);
672 }
673 if (dir2_fh_len) {
674 dfh = fanotify_info_dir2_fh(info);
675 len = fanotify_encode_fh(dfh, dir2, dir2_fh_len, hash, 0);
676 fanotify_info_set_dir2_fh(info, len);
677 }
678 if (child_fh_len) {
679 ffh = fanotify_info_file_fh(info);
680 len = fanotify_encode_fh(ffh, child, child_fh_len, hash, 0);
681 fanotify_info_set_file_fh(info, len);
682 }
683 if (name_len) {
684 fanotify_info_copy_name(info, name);
685 *hash ^= full_name_hash((void *)name_len, name->name, name_len);
686 }
687 if (name2_len) {
688 fanotify_info_copy_name2(info, name2);
689 *hash ^= full_name_hash((void *)name2_len, name2->name,
690 name2_len);
691 }
692
693 pr_debug("%s: size=%u dir_fh_len=%u child_fh_len=%u name_len=%u name='%.*s'\n",
694 __func__, size, dir_fh_len, child_fh_len,
695 info->name_len, info->name_len, fanotify_info_name(info));
696
697 if (dir2_fh_len) {
698 pr_debug("%s: dir2_fh_len=%u name2_len=%u name2='%.*s'\n",
699 __func__, dir2_fh_len, info->name2_len,
700 info->name2_len, fanotify_info_name2(info));
701 }
702
703 return &fne->fae;
704 }
705
fanotify_alloc_error_event(struct fsnotify_group * group,__kernel_fsid_t * fsid,const void * data,int data_type,unsigned int * hash)706 static struct fanotify_event *fanotify_alloc_error_event(
707 struct fsnotify_group *group,
708 __kernel_fsid_t *fsid,
709 const void *data, int data_type,
710 unsigned int *hash)
711 {
712 struct fs_error_report *report =
713 fsnotify_data_error_report(data, data_type);
714 struct inode *inode;
715 struct fanotify_error_event *fee;
716 int fh_len;
717
718 if (WARN_ON_ONCE(!report))
719 return NULL;
720
721 fee = mempool_alloc(&group->fanotify_data.error_events_pool, GFP_NOFS);
722 if (!fee)
723 return NULL;
724
725 fee->fae.type = FANOTIFY_EVENT_TYPE_FS_ERROR;
726 fee->error = report->error;
727 fee->err_count = 1;
728 fee->fsid = *fsid;
729
730 inode = report->inode;
731 fh_len = fanotify_encode_fh_len(inode);
732
733 /* Bad fh_len. Fallback to using an invalid fh. Should never happen. */
734 if (!fh_len && inode)
735 inode = NULL;
736
737 fanotify_encode_fh(&fee->object_fh, inode, fh_len, NULL, 0);
738
739 *hash ^= fanotify_hash_fsid(fsid);
740
741 return &fee->fae;
742 }
743
fanotify_alloc_event(struct fsnotify_group * group,u32 mask,const void * data,int data_type,struct inode * dir,const struct qstr * file_name,__kernel_fsid_t * fsid,u32 match_mask)744 static struct fanotify_event *fanotify_alloc_event(
745 struct fsnotify_group *group,
746 u32 mask, const void *data, int data_type,
747 struct inode *dir, const struct qstr *file_name,
748 __kernel_fsid_t *fsid, u32 match_mask)
749 {
750 struct fanotify_event *event = NULL;
751 gfp_t gfp = GFP_KERNEL_ACCOUNT;
752 unsigned int fid_mode = FAN_GROUP_FLAG(group, FANOTIFY_FID_BITS);
753 struct inode *id = fanotify_fid_inode(mask, data, data_type, dir,
754 fid_mode);
755 struct inode *dirid = fanotify_dfid_inode(mask, data, data_type, dir);
756 const struct path *path = fsnotify_data_path(data, data_type);
757 u64 mnt_id = fsnotify_data_mnt_id(data, data_type);
758 struct mem_cgroup *old_memcg;
759 struct dentry *moved = NULL;
760 struct inode *child = NULL;
761 bool name_event = false;
762 unsigned int hash = 0;
763 bool ondir = mask & FAN_ONDIR;
764 struct pid *pid;
765
766 if ((fid_mode & FAN_REPORT_DIR_FID) && dirid) {
767 /*
768 * For certain events and group flags, report the child fid
769 * in addition to reporting the parent fid and maybe child name.
770 */
771 if (fanotify_report_child_fid(fid_mode, mask) && id != dirid)
772 child = id;
773
774 id = dirid;
775
776 /*
777 * We record file name only in a group with FAN_REPORT_NAME
778 * and when we have a directory inode to report.
779 *
780 * For directory entry modification event, we record the fid of
781 * the directory and the name of the modified entry.
782 *
783 * For event on non-directory that is reported to parent, we
784 * record the fid of the parent and the name of the child.
785 *
786 * Even if not reporting name, we need a variable length
787 * fanotify_name_event if reporting both parent and child fids.
788 */
789 if (!(fid_mode & FAN_REPORT_NAME)) {
790 name_event = !!child;
791 file_name = NULL;
792 } else if ((mask & ALL_FSNOTIFY_DIRENT_EVENTS) || !ondir) {
793 name_event = true;
794 }
795
796 /*
797 * In the special case of FAN_RENAME event, use the match_mask
798 * to determine if we need to report only the old parent+name,
799 * only the new parent+name or both.
800 * 'dirid' and 'file_name' are the old parent+name and
801 * 'moved' has the new parent+name.
802 */
803 if (mask & FAN_RENAME) {
804 bool report_old, report_new;
805
806 if (WARN_ON_ONCE(!match_mask))
807 return NULL;
808
809 /* Report both old and new parent+name if sb watching */
810 report_old = report_new =
811 match_mask & (1U << FSNOTIFY_ITER_TYPE_SB);
812 report_old |=
813 match_mask & (1U << FSNOTIFY_ITER_TYPE_INODE);
814 report_new |=
815 match_mask & (1U << FSNOTIFY_ITER_TYPE_INODE2);
816
817 if (!report_old) {
818 /* Do not report old parent+name */
819 dirid = NULL;
820 file_name = NULL;
821 }
822 if (report_new) {
823 /* Report new parent+name */
824 moved = fsnotify_data_dentry(data, data_type);
825 }
826 }
827 }
828
829 /*
830 * For queues with unlimited length lost events are not expected and
831 * can possibly have security implications. Avoid losing events when
832 * memory is short. For the limited size queues, avoid OOM killer in the
833 * target monitoring memcg as it may have security repercussion.
834 */
835 if (group->max_events == UINT_MAX)
836 gfp |= __GFP_NOFAIL;
837 else
838 gfp |= __GFP_RETRY_MAYFAIL;
839
840 /* Whoever is interested in the event, pays for the allocation. */
841 old_memcg = set_active_memcg(group->memcg);
842
843 if (FAN_GROUP_FLAG(group, FAN_REPORT_TID))
844 pid = task_pid(current);
845 else
846 pid = task_tgid(current);
847
848 if (FAN_GROUP_FLAG(group, FAN_REPORT_PIDFD) &&
849 pidfs_register_pid_gfp(pid, gfp))
850 goto out;
851
852 if (fanotify_is_perm_event(mask)) {
853 event = fanotify_alloc_perm_event(data, data_type, gfp);
854 } else if (fanotify_is_error_event(mask)) {
855 event = fanotify_alloc_error_event(group, fsid, data,
856 data_type, &hash);
857 } else if (name_event && (file_name || moved || child)) {
858 event = fanotify_alloc_name_event(dirid, fsid, file_name, child,
859 moved, &hash, gfp);
860 } else if (fid_mode) {
861 event = fanotify_alloc_fid_event(id, fsid, &hash, gfp);
862 } else if (path) {
863 event = fanotify_alloc_path_event(path, &hash, gfp);
864 } else if (mnt_id) {
865 event = fanotify_alloc_mnt_event(mnt_id, gfp);
866 } else {
867 WARN_ON_ONCE(1);
868 }
869
870 if (!event)
871 goto out;
872
873 /* Mix event info, FAN_ONDIR flag and pid into event merge key */
874 hash ^= hash_long((unsigned long)pid | ondir, FANOTIFY_EVENT_HASH_BITS);
875 fanotify_init_event(event, hash, mask);
876 event->pid = get_pid(pid);
877
878 out:
879 set_active_memcg(old_memcg);
880 return event;
881 }
882
883 /*
884 * Get cached fsid of the filesystem containing the object from any mark.
885 * All marks are supposed to have the same fsid, but we do not verify that here.
886 */
fanotify_get_fsid(struct fsnotify_iter_info * iter_info)887 static __kernel_fsid_t fanotify_get_fsid(struct fsnotify_iter_info *iter_info)
888 {
889 struct fsnotify_mark *mark;
890 int type;
891 __kernel_fsid_t fsid = {};
892
893 fsnotify_foreach_iter_mark_type(iter_info, mark, type) {
894 if (!(mark->flags & FSNOTIFY_MARK_FLAG_HAS_FSID))
895 continue;
896 fsid = FANOTIFY_MARK(mark)->fsid;
897 if (!(mark->flags & FSNOTIFY_MARK_FLAG_WEAK_FSID) &&
898 WARN_ON_ONCE(!fsid.val[0] && !fsid.val[1]))
899 continue;
900 return fsid;
901 }
902
903 return fsid;
904 }
905
906 /*
907 * Add an event to hash table for faster merge.
908 */
fanotify_insert_event(struct fsnotify_group * group,struct fsnotify_event * fsn_event)909 static void fanotify_insert_event(struct fsnotify_group *group,
910 struct fsnotify_event *fsn_event)
911 {
912 struct fanotify_event *event = FANOTIFY_E(fsn_event);
913 unsigned int bucket = fanotify_event_hash_bucket(group, event);
914 struct hlist_head *hlist = &group->fanotify_data.merge_hash[bucket];
915
916 assert_spin_locked(&group->notification_lock);
917
918 if (!fanotify_is_hashed_event(event->mask))
919 return;
920
921 pr_debug("%s: group=%p event=%p bucket=%u\n", __func__,
922 group, event, bucket);
923
924 hlist_add_head(&event->merge_list, hlist);
925 }
926
fanotify_handle_event(struct fsnotify_group * group,u32 mask,const void * data,int data_type,struct inode * dir,const struct qstr * file_name,u32 cookie,struct fsnotify_iter_info * iter_info)927 static int fanotify_handle_event(struct fsnotify_group *group, u32 mask,
928 const void *data, int data_type,
929 struct inode *dir,
930 const struct qstr *file_name, u32 cookie,
931 struct fsnotify_iter_info *iter_info)
932 {
933 int ret = 0;
934 struct fanotify_event *event;
935 struct fsnotify_event *fsn_event;
936 __kernel_fsid_t fsid = {};
937 u32 match_mask = 0;
938
939 BUILD_BUG_ON(FAN_ACCESS != FS_ACCESS);
940 BUILD_BUG_ON(FAN_MODIFY != FS_MODIFY);
941 BUILD_BUG_ON(FAN_ATTRIB != FS_ATTRIB);
942 BUILD_BUG_ON(FAN_CLOSE_NOWRITE != FS_CLOSE_NOWRITE);
943 BUILD_BUG_ON(FAN_CLOSE_WRITE != FS_CLOSE_WRITE);
944 BUILD_BUG_ON(FAN_OPEN != FS_OPEN);
945 BUILD_BUG_ON(FAN_MOVED_TO != FS_MOVED_TO);
946 BUILD_BUG_ON(FAN_MOVED_FROM != FS_MOVED_FROM);
947 BUILD_BUG_ON(FAN_CREATE != FS_CREATE);
948 BUILD_BUG_ON(FAN_DELETE != FS_DELETE);
949 BUILD_BUG_ON(FAN_DELETE_SELF != FS_DELETE_SELF);
950 BUILD_BUG_ON(FAN_MOVE_SELF != FS_MOVE_SELF);
951 BUILD_BUG_ON(FAN_EVENT_ON_CHILD != FS_EVENT_ON_CHILD);
952 BUILD_BUG_ON(FAN_Q_OVERFLOW != FS_Q_OVERFLOW);
953 BUILD_BUG_ON(FAN_OPEN_PERM != FS_OPEN_PERM);
954 BUILD_BUG_ON(FAN_ACCESS_PERM != FS_ACCESS_PERM);
955 BUILD_BUG_ON(FAN_ONDIR != FS_ISDIR);
956 BUILD_BUG_ON(FAN_OPEN_EXEC != FS_OPEN_EXEC);
957 BUILD_BUG_ON(FAN_OPEN_EXEC_PERM != FS_OPEN_EXEC_PERM);
958 BUILD_BUG_ON(FAN_FS_ERROR != FS_ERROR);
959 BUILD_BUG_ON(FAN_RENAME != FS_RENAME);
960 BUILD_BUG_ON(FAN_PRE_ACCESS != FS_PRE_ACCESS);
961
962 BUILD_BUG_ON(HWEIGHT32(ALL_FANOTIFY_EVENT_BITS) != 24);
963
964 mask = fanotify_group_event_mask(group, iter_info, &match_mask,
965 mask, data, data_type, dir);
966 if (!mask)
967 return 0;
968
969 pr_debug("%s: group=%p mask=%x report_mask=%x\n", __func__,
970 group, mask, match_mask);
971
972 if (fanotify_is_perm_event(mask)) {
973 /*
974 * fsnotify_prepare_user_wait() fails if we race with mark
975 * deletion. Just let the operation pass in that case.
976 */
977 if (!fsnotify_prepare_user_wait(iter_info))
978 return 0;
979 }
980
981 if (FAN_GROUP_FLAG(group, FANOTIFY_FID_BITS))
982 fsid = fanotify_get_fsid(iter_info);
983
984 event = fanotify_alloc_event(group, mask, data, data_type, dir,
985 file_name, &fsid, match_mask);
986 ret = -ENOMEM;
987 if (unlikely(!event)) {
988 /*
989 * We don't queue overflow events for permission events as
990 * there the access is denied and so no event is in fact lost.
991 */
992 if (!fanotify_is_perm_event(mask))
993 fsnotify_queue_overflow(group);
994 goto finish;
995 }
996
997 fsn_event = &event->fse;
998 ret = fsnotify_insert_event(group, fsn_event, fanotify_merge,
999 fanotify_insert_event);
1000 if (ret) {
1001 /* Permission events shouldn't be merged */
1002 BUG_ON(ret == 1 && mask & FANOTIFY_PERM_EVENTS);
1003 /* Our event wasn't used in the end. Free it. */
1004 fsnotify_destroy_event(group, fsn_event);
1005
1006 ret = 0;
1007 } else if (fanotify_is_perm_event(mask)) {
1008 ret = fanotify_get_response(group, FANOTIFY_PERM(event),
1009 iter_info);
1010 }
1011 finish:
1012 if (fanotify_is_perm_event(mask))
1013 fsnotify_finish_user_wait(iter_info);
1014
1015 return ret;
1016 }
1017
fanotify_free_group_priv(struct fsnotify_group * group)1018 static void fanotify_free_group_priv(struct fsnotify_group *group)
1019 {
1020 put_user_ns(group->user_ns);
1021 kfree(group->fanotify_data.merge_hash);
1022 if (group->fanotify_data.ucounts)
1023 dec_ucount(group->fanotify_data.ucounts,
1024 UCOUNT_FANOTIFY_GROUPS);
1025
1026 if (mempool_initialized(&group->fanotify_data.error_events_pool))
1027 mempool_exit(&group->fanotify_data.error_events_pool);
1028 }
1029
fanotify_free_path_event(struct fanotify_event * event)1030 static void fanotify_free_path_event(struct fanotify_event *event)
1031 {
1032 path_put(fanotify_event_path(event));
1033 kmem_cache_free(fanotify_path_event_cachep, FANOTIFY_PE(event));
1034 }
1035
fanotify_free_perm_event(struct fanotify_event * event)1036 static void fanotify_free_perm_event(struct fanotify_event *event)
1037 {
1038 path_put(fanotify_event_path(event));
1039 kmem_cache_free(fanotify_perm_event_cachep, FANOTIFY_PERM(event));
1040 }
1041
fanotify_free_fid_event(struct fanotify_event * event)1042 static void fanotify_free_fid_event(struct fanotify_event *event)
1043 {
1044 struct fanotify_fid_event *ffe = FANOTIFY_FE(event);
1045
1046 if (fanotify_fh_has_ext_buf(&ffe->object_fh))
1047 kfree(fanotify_fh_ext_buf(&ffe->object_fh));
1048 kmem_cache_free(fanotify_fid_event_cachep, ffe);
1049 }
1050
fanotify_free_name_event(struct fanotify_event * event)1051 static void fanotify_free_name_event(struct fanotify_event *event)
1052 {
1053 kfree(FANOTIFY_NE(event));
1054 }
1055
fanotify_free_error_event(struct fsnotify_group * group,struct fanotify_event * event)1056 static void fanotify_free_error_event(struct fsnotify_group *group,
1057 struct fanotify_event *event)
1058 {
1059 struct fanotify_error_event *fee = FANOTIFY_EE(event);
1060
1061 mempool_free(fee, &group->fanotify_data.error_events_pool);
1062 }
1063
fanotify_free_mnt_event(struct fanotify_event * event)1064 static void fanotify_free_mnt_event(struct fanotify_event *event)
1065 {
1066 kmem_cache_free(fanotify_mnt_event_cachep, FANOTIFY_ME(event));
1067 }
1068
fanotify_free_event(struct fsnotify_group * group,struct fsnotify_event * fsn_event)1069 static void fanotify_free_event(struct fsnotify_group *group,
1070 struct fsnotify_event *fsn_event)
1071 {
1072 struct fanotify_event *event;
1073
1074 event = FANOTIFY_E(fsn_event);
1075 put_pid(event->pid);
1076 switch (event->type) {
1077 case FANOTIFY_EVENT_TYPE_PATH:
1078 fanotify_free_path_event(event);
1079 break;
1080 case FANOTIFY_EVENT_TYPE_PATH_PERM:
1081 fanotify_free_perm_event(event);
1082 break;
1083 case FANOTIFY_EVENT_TYPE_FID:
1084 fanotify_free_fid_event(event);
1085 break;
1086 case FANOTIFY_EVENT_TYPE_FID_NAME:
1087 fanotify_free_name_event(event);
1088 break;
1089 case FANOTIFY_EVENT_TYPE_OVERFLOW:
1090 kfree(event);
1091 break;
1092 case FANOTIFY_EVENT_TYPE_FS_ERROR:
1093 fanotify_free_error_event(group, event);
1094 break;
1095 case FANOTIFY_EVENT_TYPE_MNT:
1096 fanotify_free_mnt_event(event);
1097 break;
1098 default:
1099 WARN_ON_ONCE(1);
1100 }
1101 }
1102
fanotify_freeing_mark(struct fsnotify_mark * mark,struct fsnotify_group * group)1103 static void fanotify_freeing_mark(struct fsnotify_mark *mark,
1104 struct fsnotify_group *group)
1105 {
1106 if (!FAN_GROUP_FLAG(group, FAN_UNLIMITED_MARKS))
1107 dec_ucount(group->fanotify_data.ucounts, UCOUNT_FANOTIFY_MARKS);
1108 }
1109
fanotify_free_mark(struct fsnotify_mark * fsn_mark)1110 static void fanotify_free_mark(struct fsnotify_mark *fsn_mark)
1111 {
1112 kmem_cache_free(fanotify_mark_cache, FANOTIFY_MARK(fsn_mark));
1113 }
1114
1115 const struct fsnotify_ops fanotify_fsnotify_ops = {
1116 .handle_event = fanotify_handle_event,
1117 .free_group_priv = fanotify_free_group_priv,
1118 .free_event = fanotify_free_event,
1119 .freeing_mark = fanotify_freeing_mark,
1120 .free_mark = fanotify_free_mark,
1121 };
1122